Yonezawa S, Tanaka T, Miyauchi T
Arch Biochem Biophys. 1987 Aug 1;256(2):499-508. doi: 10.1016/0003-9861(87)90607-2.
An extract of rat neutrophils was found to contain a high hemoglobin-hydrolyzing activity at pH 3.2, about 70% of which does not cross-react with anti-rat liver cathepsin D antibody. A neutrophil non-cathepsin D acid proteinase was successfully isolated from cathepsin D and characterized in comparison with the properties of rat liver cathepsin D. The neutrophil enzyme differed from cathepsin D in chromatographic and electrophoretic behaviors as well as immunological cross-reactivity, and its molecular weight was estimated to be 98,000 by gel filtration on Toyopearl HW 55. These findings strongly suggest that the neutrophil enzyme could be classified as cathepsin E. The enzyme, now designated rat cathepsin E, had an optimal pH at 3.0-3.2, preferred hemoglobin to albumin as substrate, and was markedly resistant to urea denaturation. Rat cathepsins D and E cleaved the insulin B-chain at six and eight sites, respectively; five sites were common for both enzymes. Possible relations among cathepsin E and cathepsin D-like or E-like acid proteinases reported so far were discussed.
研究发现,大鼠中性粒细胞提取物在pH 3.2时具有较高的血红蛋白水解活性,其中约70%与抗大鼠肝脏组织蛋白酶D抗体无交叉反应。一种中性粒细胞非组织蛋白酶D酸性蛋白酶已成功从组织蛋白酶D中分离出来,并与大鼠肝脏组织蛋白酶D的特性进行了比较。中性粒细胞酶在色谱和电泳行为以及免疫交叉反应性方面与组织蛋白酶D不同,通过在Toyopearl HW 55上进行凝胶过滤,其分子量估计为98,000。这些发现强烈表明,中性粒细胞酶可归类为组织蛋白酶E。该酶现命名为大鼠组织蛋白酶E,最适pH为3.0 - 3.2,以血红蛋白为底物优于白蛋白,且对尿素变性具有明显抗性。大鼠组织蛋白酶D和E分别在六个和八个位点切割胰岛素B链;两种酶有五个共同位点。文中还讨论了目前报道的组织蛋白酶E与类似组织蛋白酶D或E的酸性蛋白酶之间可能的关系。